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ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 1 OF 7 P1TX4C-SX4-01MM Product Specification Sheet
ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 2 OF 7
1.0 Features
- Multiple signals over one multimode fiber
- Integrated microcontroller for laser driver control
- ~ 0.5W power consumption
- Metal enclosure with SC optical interface This device is EXTREMELY SENSITIVE to Electrostatic Discharge (ESD). At a minimum, all handling must be performed in accordance with an ANSI-compliant ESD Control Program (ANSI/ESD S20.20-2007) to mitigate possible ESD-induced damage. Reliability and life of the device will be adversely affected if these precautions are not met. This device is a Class 3R Laser device (per IEC 60825-1:2007) and can cause damage to eye sight if used improperly. Refer to ANSI Z136 for proper handling and usage of Class 3R devices.
ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 3 OF 7
2.0 Absolute Maximum Ratings
Parameter Symbol Min Typ Max Units Storage Temperature 1 Tst °C 3.3V Supply Voltage VCC1 V Operating Surface Temperature 2 Ta °C Operating Humidity 3 RH % Durability – SC Connector 200 cycles Durability – Plug-down Connector 50 cycles
3.0 Optical Characteristics
Parameter (per Channel) Symbol Min Typ Max Units Average Optical Power, per Lane 4 Pout 0.0 dBm Optical Modulation Amplitude dBm Center Wavelength – Lane 0 778 nm Center Wavelength – Lane 1 800 nm Center Wavelength – Lane 2 825 nm Center Wavelength – Lane 3 850 nm Optical Rise/Fall Time 5 P1TX4C-SX4V-01 P1TX4C-SX4D-01 200 100 ps 1 Stresses listed may be applied without causing damage. Functionality at or above the values listed is not implied. Exposure to these values for extended periods may affect reliability. 2 See outline drawing for measurement point. 3 Non condensing, 80% RH. 4 I= 5mA, T=25C. Measured at the end of a 2m section of 62.5 µ fiber.
5 Rise and fall times measured from 20 - 80%
ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 4 OF 7
4.0 Electrical Specifications
Parameter Symbol Min Typ Max Units Data Rate per Wavelength 6 P1TX4C-SX4V-01 P1TX4C-SX4D-01 Gb/s Total Jitter (RMS) per lane 7 T J1 10 ps Input Differential Impedance 100 ohm Input Differential Voltage mVp-p Single-ended Input Voltage mVp-p Common mode input voltage (AC-coupled input) 2.6 V Operating Supply Voltage Vcc-Vee 3.30 V Operating Supply Current Icc 140 mA
5.0 Fiber Transmission Distance 8
None 200 400 1000 m 1.65 Gbps 2.42ns 200 400 400 m None 100 200 500 m 2.42ns 100 200 400 m 3.50 Gbps 1.78ns 100 200 294 m 6 Requires DC-balanced data pattern and a max run length of 80 bits. Measured with input signals conforming to HDMI rev 1.3a, section 4.2.4, figure 4-18. 7 Based on a jitter-free source. For optimal performance, clocks should be transmitted on Lane 0 8 Max distance considers the worst-case conditions. Actual distance may be up to 4x specified distance.
ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 5 OF 7
6.0 Pin Numbers and Descriptions
The TX-SX4 plugs into a 30 pin connector. For information on the specifications of the connector, contact Hirose (DF12(4.0)-30DP-0.5V(86)). Pin # Signal Name Description
1 GND Ground Ground
2 NC No connect No Connect 9
3 + IN0 Ch 0 + Data Input Positive differential input for 778nm channel
4 NC No connect No Connect 9
5 - IN0 Ch 0 - Data Input Negative differential input for 778nm channel
6 NC No connect No Connect 9
7 + IN1 Ch 1 + Data Input Positive differential input for 800nm channel
8 NC No connect No Connect 9
9 - IN1 Ch 1 - Data Input Negative differential input for 800nm channel
10 NC No connect No Connect 9
11 + IN2 Ch 2 + Data Input Positive differential input for 825nm channel
12 NC No connect No Connect 9
13 - IN2 Ch 2 - Data Input Negative differential input for 825nm channel
14 NC No connect No Connect 9
15 + IN3 Ch 3 + Data Input Positive differential input for 850nm channel
16 NC No connect No Connect 9
17 - IN3 Ch 3 - Data Input Negative differential input for 850nm channel 18 EN Enable 3.3V=normal operation, 0V turns off la sers
19 GND Ground Ground
20 NC No connect No Connect 9
21 NC No connect No Connect 9
22 NC No connect No Connect 9
23 NC No connect No Connect 9
24 NC No connect No Connect 9
25 NC No connect No Connect 9
26 NC No connect No Connect 9
27 NC No connect No Connect 9
28 VCC Voltage Input +3.3 volt input
29 GND Ground Ground
30 VCC Voltage Input +3.3 volt input
7.0 Laser Safety
The P1TX4C-SX4x-01 meets Class-3 requirements. 9 NC = No Connect. Do not connect anything to this PIN.
ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 6 OF 7
8.0 Environmental Standards
Omron Network Products designs and manufactures its products to minimize the negative impact on our environment. As such, the P1TX4C-SX4-01MM conforms to a variety of environmental and safety standards Standard Compliant Certificate Available RoHS Yes Yes
ORIGINATOR: C. ENG DATE: 7/8/2011 DOCUMENT NO. DOC002327 REV A P1TX4C-SX4x-01MM Product Specification SHEET 7 OF 7
9.0 Dimensions
The SX4 TOSA is designed to work with a standard SC ferrule only. Insertion of any other type may result in damage. Dimensions (mm) and orientation are for reference only. Temperature measurement point